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首页> 外文期刊>Physiological Reports >The stretch‐shortening cycle (SSC) revisited: residual force enhancement contributes to increased performance during fast SSCs of human m. adductor pollicis
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The stretch‐shortening cycle (SSC) revisited: residual force enhancement contributes to increased performance during fast SSCs of human m. adductor pollicis

机译:重新研究了缩短-缩短周期(SSC):残余力的增加有助于在人类m快速SSC期间提高性能。内收肌

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AbstractThe stretch-shortening cycle (SSC) occurs in most everyday movements, and is thought to provoke a performance enhancement of the musculoskeletal system. However, mechanisms of this performance enhancement remain a matter of debate. One proposed mechanism is associated with a stretch-induced increase in steady-state force, referred to as residual force enhancement (RFE). As yet, direct evidence relating RFE to increased force/work during SSCs is missing. Therefore, forces of electrically stimulated m. adductor pollicis (n = 14 subjects) were measured during and after pure stretch, pure shortening, and stretch-shortening contractions with varying shortening amplitudes. Active stretch (30°, ω = 161 ± 6°s−1) caused significant RFE (16%, P  0.01), whereas active shortening (10°, 20°, and 30°; ω = 103 ± 3°s−1, 152 ± 5°s−1, and 170 ± 5°s−1) resulted in significant force depression (9–15%, P  0.01). In contrast, after SSCs (that is when active stretch preceded active shortening) no force depression was found. Indeed for our specific case in which the shortening amplitude was only 1/3 of the lengthening amplitude, there was a remnant RFE (10%, P  0.01) following the active shortening. This result indicates that the RFE generated during lengthening affected force depression when active lengthening was followed by active shortening. As conventional explanations, such as the storage and release of elastic energy, cannot explain the enhanced steady-state force after SSCs, it appears that the stretch-induced RFE is not immediately abolished during shortening and contributes to the increased force and work during SSCs.
机译:摘要拉伸-缩短周期(SSC)发生在大多数日常运动中,被认为可以增强肌肉骨骼系统的性能。但是,这种性能增强的机制仍存在争议。一种提出的机制与拉伸引起的稳态力的增加相关,称为残余力增强(RFE)。到目前为止,尚没有将RFE与SSC期间增加的力量/工作相关的直接证据。因此,电刺激的力为m。在纯拉伸,纯缩短和拉伸缩短收缩期间和之后,以不同的缩短幅度对内收肌进行测量(n = 14位受试者)。主动拉伸(30°,ω= 161±6°s −1 )引起明显的RFE(16%,P <0.01),而主动缩短(10°,20°和30°;ω = 103±3°s -1 ,152±5°s -1 和170±5°s -1 )压抑(9-15%,P <0.01)。相反,在SSC后(即主动拉伸先于主动缩短)之后,未发现力降低。确实,对于我们的特定情况,其中缩短幅度仅为延长幅度的1/3,在主动缩短之后存在剩余的RFE(10%,P <0.01)。该结果表明,在拉长过程中产生的RFE会在主动拉长之后主动拉长的情况下影响力的下降。正如传统的解释,例如弹性能量的存储和释放,并不能解释SSC后稳态力的增加,似乎拉伸引起的RFE不会在缩短过程中立即消失,而是会导致SSC期间力和功的增加。

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